离子液体
化学
发酵
乳酸
萃取(化学)
工业与生产工程
水解
木糖
色谱法
双水相体系
水溶液
核化学
食品科学
有机化学
细菌
催化作用
生物
电气工程
遗传学
工程类
作者
Xu Zhou,Yaqin Sun,Hongjun Zhan,Haijun Liu,Xiaoyan Wang,Xu Yang,Yi Li,Zhilong Xiu,Yi Tong
标识
DOI:10.1186/s40643-021-00481-4
摘要
Abstract In this study, ionic liquid-based sugaring-out extraction was developed to separate lactic acid from the synthetic solution and actual lignocellulosic fermentation broth. Except for [E OH mim]BF 4 , the ILs with BF 4 − and OTF − anion can form aqueous two-phase system (ATPS) with the aid of saccharides. With the same kind of saccharides, the ATPS formation ability of ILs could be promoted by increasing the side-chain length of ILs in the order of [Hmim]BF 4 ≈ [Bmim]BF 4 ˃ [Emim]BF 4 due to the decrease in ILs’ kosmotropicity. On the other hand, for the same type of ILs, an ATPS was formed more easily with glucose than with xylose. When IL concentration varied from 35% (w/w) to 40% (w/w) at a low glucose concentration of 15% (w/w), an interesting phase reversal was observed. When lactic acid was undissociated at pH 2.0, 51.8% LA and 92.3% [Bmim]BF 4 were partitioned to the top phase, and 97.0% glucose to the bottom phase using an ATPS consisting of 25% (w/w) glucose and 45% (w/w) IL. The total recovery of LA would increase to 89.0% in three-stage sugaring-out extraction from synthetic solution. In three-stage sugaring-out extraction from the filtered and unfiltered fermentation broth obtained via simultaneous saccharification and co-fermentation (SSCF) of acid-pretreated corn stover by the microbial consortium, the total recovery of LA was 89.5% and 89.8%, respectively. Furthermore, the total removal ratio of cells and pigments from the unfiltered broth was 68.4% and 65.4%, respectively. The results support IL-based sugaring-out extraction as a potential method for the recovery of lactic acid from actual fermentation broth. Graphical Abstract
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